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松科白皮松 CONSTANS 类基因家族的全基因组鉴定及其在生殖球果发育中的潜在作用。

Genome-wide identification of the Pinus tabuliformis CONSTANS-like gene family and their potential roles in reproductive cone development.

机构信息

State Key Laboratory of Tree Genetics and Breeding, National Engineering Research Center of Tree Breeding and Ecological Restoration, College of Biological Sciences and Technology, Beijing Forestry University, Beijing 100083, China.

Department of Forest and Conservation Sciences, Faculty of Forestry, University of British Columbia, 2424 Main Mall, Vancouver, BC V6T 1Z4, Canada.

出版信息

Int J Biol Macromol. 2024 Jan;254(Pt 1):127621. doi: 10.1016/j.ijbiomac.2023.127621. Epub 2023 Oct 27.

Abstract

The CONSTANS-like (COL) genes, as a core transcription factor in the photoperiod regulation pathway, play a key role in plant reproduction development. However, their molecular characterization has rarely been studied in Pinus tabuliformis. Here, 10 PtCOL genes were identified in the P. tabuliformis genome and multiple sequence alignments have indicated that the PtCOL proteins contained highly conserved B-BOX1 and CCT domains. Sequence similarity analysis showed that PtCOL1 and PtCOL3 had the higher similarity with Norway spruce COLs (PaCOL2 and PaCOL1) and Arabidopsis COLs (AtCOL3, 4 and 5), respectively. Phylogeny and gene structure analyses revealed that PtCOLs were divided into three subgroups, each with identical or similar distributions of exons, introns, and motifs. Moreover, 10 PtCOLs were distributed on 6 chromosomes and PtCOL9 has syntenic gene pairs in both Ginkgo biloba and Sequoiadendron giganteum. Interestingly, in transcriptome profiles, most PtCOLs exhibited a diurnal oscillation pattern under both long (LD) and short (SD) day conditions. Additionally, PtCOLs were highly expressed in needles and female cones, and showed different spatial expression patterns. Among the ten PtCOLs, PtCOL1/3 heterologous overexpression Arabidopsis displayed a delayed-flowering phenotype under SD, indicating that they are likely to play a crucial role in the reproductive development. Additionally, PtCOL1 and PtCOL3 were not only capable of interacting with each other, but they were each capable of interacting with themselves. Furthermore, PtCOL1 and PtCOL3 were also involved in the MADS-box protein-protein interaction (PPI) network in P. tabuliformis cone development. Direct interactions of PtDAL11 with PtCOL1/3 impeded PtCOL1/3 translocation into the nucleus. In summary, this study provided comprehensive understanding for the functions of the PtCOL gene family and revealed their biological roles in the photoperiod-dependent P. tabuliformis cone development.

摘要

COL 基因作为光周期调控途径中的核心转录因子,在植物生殖发育中发挥着关键作用。然而,COL 基因在白皮松中的分子特征研究甚少。本研究在白皮松基因组中鉴定了 10 个 PtCOL 基因,多序列比对表明 PtCOL 蛋白含有高度保守的 B-BOX1 和 CCT 结构域。序列相似性分析表明,PtCOL1 和 PtCOL3 分别与挪威云杉 COLs(PaCOL2 和 PaCOL1)和拟南芥 COLs(AtCOL3、4 和 5)具有较高的相似性。系统发育和基因结构分析表明,PtCOL 分为 3 个亚组,每个亚组的外显子、内含子和基序的分布相同或相似。此外,10 个 PtCOL 基因分布在 6 条染色体上,PtCOL9 在银杏和巨杉中具有同源基因对。有趣的是,在转录组谱中,大多数 PtCOL 在长日照(LD)和短日照(SD)条件下均表现出昼夜节律模式。此外,PtCOL 在针叶和雌球果中高表达,并表现出不同的空间表达模式。在这 10 个 PtCOL 中,PtCOL1/3 异源过表达拟南芥在 SD 下表现出开花延迟表型,表明它们可能在生殖发育中发挥重要作用。此外,PtCOL1 和 PtCOL3 不仅能够相互作用,而且彼此之间也能够相互作用。此外,PtCOL1 和 PtCOL3 还参与了白皮松雄球果发育过程中的 MADS-box 蛋白-蛋白相互作用(PPI)网络。PtDAL11 与 PtCOL1/3 的直接相互作用阻碍了 PtCOL1/3 向核内的转运。综上所述,本研究为白皮松 PtCOL 基因家族的功能提供了全面的认识,并揭示了它们在光周期依赖性白皮松雄球果发育中的生物学作用。

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